Exploring the Effect of Peclet Number on the Transient Thermal Response of a Convective-Radiative Moving Porous Fin

G. Sobamowo, A. Yinusa, H. Berrehal, R. Ola-Gbadamosi, M. Salami, E. Abubakar, S. A. Oladosu
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Abstract

In the thermal analysis of moving fins, there have been conflicting results as well as discussion on the effects of Peclet number on the thermal responses of fins. While some authors agreed the increase in Peclet number, increases the fin temperature, the other class of researchers is of the opinion that when the Peclet number increases, the fin temperature decreases. It could be said that many of these divergence views arose from the physics of the problem as well as the mathematical model governing the heat transfer problem. Therefore, in this work, through modeling from the first principle, the effect of Peclet number on the thermal behaviour of convective-radiative moving porous fin is explored. First, a transient thermal model of a convective-radiative rectangular moving porous fin with temperature-dependent internal heat generation is developed. The developed thermal model is nondimensionalized to bring up the needed Peclet number in the dimensional governing equation of the heat transfer process. Thereafter, the model is solved analytically using the Laplace transform method and the effect of Peclet number on the thermal behaviour of the fin is investigated and discussed. It is hoped that the present study will help for better understanding of the thermal problems in extended surfaces.This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium provided the original work is properly cited.
探讨小波数对对流辐射移动多孔翅片瞬态热响应的影响
在运动翅片的热分析中,关于佩莱特数对翅片热响应的影响一直存在矛盾的结果和讨论。一些作者同意小鳍数量的增加会增加鳍的温度,另一类研究者认为当小鳍数量增加时,鳍的温度会降低。可以说,许多不同的观点来自于问题的物理性质以及控制传热问题的数学模型。因此,本文从第一性原理出发,探讨了Peclet数对对流辐射移动多孔翅片热行为的影响。首先,建立了对流辐射矩形移动多孔翅片的瞬态热模型。所建立的热模型是无因次化的,以便在传热过程的量纲控制方程中提出所需的佩莱特数。在此基础上,利用拉普拉斯变换方法对模型进行了解析求解,探讨了佩莱特数对翅片热性能的影响。希望本研究将有助于更好地理解扩展表面的热问题。这是一篇在知识共享署名许可(http://creativecommons.org/licenses/by/4.0/)条款下发布的开放获取文章,该许可允许在任何媒介上不受限制地使用、分发和复制,只要原始作品被适当引用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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